选定的新型植物生物活性物质对改善人原代细胞肠上皮受损肠道屏障功能的影响

D. Bolster, L. Chae, J. Klinken, S. Kalgaonkar
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引用次数: 2

摘要

在肥胖状态下,肠道屏障功能受损。n -反式咖啡酰乙胺(NCT)和n -反式阿铁酰乙胺(NFT)是两种天然存在于大麻壳中的生物活性化合物,它们具有改善肠道屏障功能的潜力,并在体外研究了它们的作用。将增殖的人横结肠上皮细胞与肿瘤坏死因子(TNF)、分化后的NCT、NFT或NCT/NFT(2.2比)共培养48小时,诱导炎症反应,观察NCT和NFT的作用。随着TNF添加量的增加,观察到经上皮电阻(TEER)的降低和肠通透性的增加。同时给药NCT和NFT显示TEER和肠通透性受损的剂量依赖性和统计学显著逆转。NCT和NFT通过显著改善TEER和通透性百分比,证明了炎症设置下肠道屏障功能受损的生理相关逆转。
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Impact of selected novel plant bioactives on improvement of impaired gut barrier function using human primary cell intestinal epithelium
Gut barrier function is compromised in the obese state. The N-trans caffeoyltyramine (NCT) and N-trans feruloyltyramine (NFT), two naturally occurring bioactive compounds in hemp hulls,  identified using in silico approaches, have the potential to improve gut barrier function and their effects were studied here in vitro. Proliferative human transverse colon epithelial cells were plated and co-cultured with tumor necrosis factor (TNF) along with NCT, NFT or NCT/NFT (2.2 ratio) post-differentiation, over a 48-hour period to induce inflammation and to observe the effects of NCT and NFT. A decrease in transepithelial electrical resistance (TEER) and increase in the intestinal permeability were observed with increased addition of TNF. Co-administration of NCT and NFT demonstrated a dose-dependent and statistically significant reversal of impaired TEER and intestinal permeability. NCT and NFT demonstrated a physiologically relevant reversal of impaired gut barrier function in the setting of inflammation via significant improvement in TEER and percent permeability.
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